Modified Seoul National University Renal Stone Complexity score for retrograde intrarenal surgery

Jin Chul Jung1, Byung Ki Lee1, Yong Hyun Park1, Sangchul Lee1,2, Seong Jin Jeong1,2, Sang Eun Lee1,2, Chang Wook Jeong1,2
1Department of Urology, Seoul National University Bundang Hospital, Seongnam, Korea
2Department of Urology, College of Medicine, Seoul National University, Seoul, Korea

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Ozturk U, Sener NC, Goktug HN, Nalbant I, Gucuk A, Imamoglu MA (2013) Comparison of percutaneous nephrolithotomy, shock wave lithotripsy, and retrograde intrarenal surgery for lower pole renal calculi 10-20 mm. Urol Int 91(3):345–349

Chen EH, Nemeth A (2011) Complications of percutaneous procedures. Am J Emerg Med 29(7):802–810

Türk CKT, Knoll T, Petrik A, Sarica K, Skolarikos A, Straub M, Seitz C (2013) Guidelines on Urolithiasis. European Association of Urology. http://www.uroweb.org/guidelines/online-guidelines. Updated 2013

Bozkurt OF, Resorlu B, Yildiz Y, Can CE, Unsal A (2011) Retrograde intrarenal surgery versus percutaneous nephrolithotomy in the management of lower-pole renal stones with a diameter of 15 to 20 mm. J Endourol 25(7):1131–1135

Srisubat A, Potisat S, Lojanapiwat B, Setthawong V, Laopaiboon M (2009) Extracorporeal shock wave lithotripsy (ESWL) versus percutaneous nephrolithotomy (PCNL) or retrograde intrarenal surgery (RIRS) for kidney stones. Cochrane Database Syst Rev 4:CD007044

Resorlu B, Unsal A, Gulec H, Oztuna D (2012) A new scoring system for predicting stone-free rate after retrograde intrarenal surgery: the “Resorlu-Unsal stone score”. Urology 80(3):512–518

Jeong CW, Jung JW, Cha WH, Lee BK, Lee S, Jeong SJ, Hong SK, Byun SS, Lee SE (2013) Seoul National University Renal Stone Complexity Score for predicting stone-free rate after percutaneous nephrolithotomy. PLoS One 8(6):e65888

Choo MS, Jeong CW, Jung JH, Lee SB, Jeong H, Son H, Kim HH, Oh SJ, Cho SY (2014) External validation and evaluation of reliability and validity of the S-ReSC scoring system to predict stone-free status after percutaneous nephrolithotomy. PLoS One 9(1):e83628

Perks AE, Schuler TD, Lee J, Ghiculete D, Chung DG, DAH RJ, Pace KT (2008) Stone attenuation and skin-to-stone distance on computed tomography predicts for stone fragmentation by shock wave lithotripsy. Urology 72(4):765–769

DeLong ER, DeLong DM, Clarke-Pearson DL (1988) Comparing the areas under two or more correlated receiver operating characteristic curves: a nonparametric approach. Biometrics 44(3):837–845

Johnson GB, Grasso M (2004) Exaggerated primary endoscope deflection: initial clinical experience with prototype flexible ureteroscopes. BJU Int 93(1):109–114

Poon M, Beaghler M, Baldwin D (1997) Flexible endoscope deflectability: changes using a variety of working instruments and laser fibers. J Endourol 11(4):247–249

Grasso M (2000) Ureteropyeloscopic treatment of ureteral and intrarenal calculi. Urol Clin North Am 27(4):623–631

Johnson GB, Portela D, Grasso M (2006) Advanced ureteroscopy: wireless and sheathless. J Endourol 20(8):552–555

Aboumarzouk OM, Monga M, Kata SG, Traxer O, Somani BK (2012) Flexible ureteroscopy and laser lithotripsy for stones >2 cm: a systematic review and meta-analysis. J Endourol 26(10):1257–1263

Sofer M, Watterson JD, Wollin TA, Nott L, Razvi H, Denstedt JD (2002) Holmium: YAG laser lithotripsy for upper urinary tract calculi in 598 patients. J Urol 167(1):31–34

Breda A, Ogunyemi O, Leppert JT, Lam JS, Schulam PG (2008) Flexible ureteroscopy and laser lithotripsy for single intrarenal stones 2 cm or greater—is this the new frontier? J Urol 179(3):981–984

Albanis S, Ather HM, Papatsoris AG, Masood J, Staios D, Sheikh T, Akhtar S, Buchholz N (2009) Inversion, hydration and diuresis during extracorporeal shock wave lithotripsy: does it improve the stone-free rate for lower pole stone clearance? Urol Int 83(2):211–216

Kosar A, Ozturk A, Serel TA, Akkus S, Unal OS (1999) Effect of vibration massage therapy after extracorporeal shockwave lithotripsy in patients with lower caliceal stones. J Endourol 13(10):705–707

Preminger GM (2006) Management of lower pole renal calculi: shock wave lithotripsy versus percutaneous nephrolithotomy versus flexible ureteroscopy. Urol Res 34(2):108–111

Kanao K, Nakashima J, Nakagawa K, Asakura H, Miyajima A, Oya M, Ohigashi T, Murai M (2006) Preoperative nomograms for predicting stone-free rate after extracorporeal shock wave lithotripsy. J Urol 176(4 Pt 1):1453–1456 (discussion 1456–1457)

Yuruk E, Binbay M, Sari E, Akman T, Altinyay E, Baykal M, Muslumanoglu AY, Tefekli A (2010) A prospective, randomized trial of management for asymptomatic lower pole calculi. J Urol 183(4):1424–1428

Goktas C, Akca O, Horuz R, Gokhan O, Albayrak S, Sarica K (2011) SWL in lower calyceal calculi: evaluation of the treatment results in children and adults. Urology 78(6):1402–1406

Mishra S, Sabnis RB, Desai M (2012) Staghorn morphometry: a new tool for clinical classification and prediction model for percutaneous nephrolithotomy monotherapy. J Endourol 26(1):6–14

Thomas K, Smith NC, Hegarty N, Glass JM (2011) The Guy’s stone score—grading the complexity of percutaneous nephrolithotomy procedures. Urology 78(2):277–281

Ganpule AP, Desai MR (2011) Urolithiasis in kidneys with abnormal lie, rotation or form. Curr Opin Urol 21(2):145–153